Recombinant Ten-Eleven Translocase 2.0 (TET 2.0) is an engineered Fe²⁺ and α-ketoglutarate (α-KG)-dependent dioxygenase based on TET enzyme modification and recombinant expression. Through a series of oxidation reactions, it can convert 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC), then into 5-formylcytosine (5fC) and 5-carboxylcytosine (5caC). With subsequent treatment using a conversion reagent or enzymatic method, 5caC is further converted into uracil (U). Through PCR, uracil (U) is converted into thymine (T), enabling DNA methylation site identification with single-base resolution and high accuracy.
Product Information
|
Product Name |
Catalog No. |
Size |
|
Recombinant Ten-Eleven Translocase 2.0 (TET 2.0) |
14557ES72 |
250 μg |
|
14557ES78 |
750 μg |
|
|
14557ES13 |
3 mg |
Component
|
Component Name |
14557ES72 |
14557ES78 |
14557ES13 |
|
Recombinant Ten-Eleven Translocase 2.0 (TET 2.0) (5 μg/μL) |
50 μL |
150 μL |
600 μL |
Storage
The product should be stored at -25°C to -15°C for 1 year.
Instructions for use
The recommended enzyme input is 30 μg per reaction*. The reaction temperature of this enzyme is 37°C. A complete reaction generally requires 2 h, and a termination step is required.
*: The enzyme input amount can be appropriately adjusted according to experimental requirements.
Notes
1. This enzyme should be handled on ice after thawing.
2. This enzyme is suitable for methylation enzyme-mediated conversion, with a DNA template input of 10-100 ng.
3. This product is for research use only.
4. For your safety and health, please operate with lab coats and disposable gloves.
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The product is for research purposes only and is not intended for therapeutic or diagnostic use in humans or animals. Products and content are protected by patents, trademarks, and copyrights owned by Yeasen Biotechnology. Trademark symbols indicate the country of origin, not necessarily registration in all regions.
Certain applications may require additional third-party intellectual property rights.
Yeasen is dedicated to ethical science, believing our research should address critical questions while ensuring safety and ethical standards.

